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Hydrofluoric Acid Resistance Corrosion Resistance In Reducing Environments Monel K500 Wire

Place of Origin China
Brand Name DLX
Model Number Monel K500
Minimum Order Quantity 5
Price $30-$50
Packaging Details Spool package with Carton box, Coil package with polybag
Payment Terms L/C, T/T, Western Union, MoneyGram
Supply Ability 300 tons per month

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Product Details
Delivery Time 7-50 Days Material Nickel Copper
Nickel(Min) 63% Curie Temperature 21-49℃
Density 8.05g/cm3 Application Anti-corrosion
Condition Hard / Soft Sureface Bright,Oxided
Melting Point 1288-1343℃ Name Monel K500 Wire
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Monel K500 Wire

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Hydrofluoric Acid Resistance Monel Wire

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Corrosion Resistant Monel K500 Alloy

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Product Description

Hydrofluoric Acid Resistance Corrosion Resistance In Reducing Environments Monel K500 Wire 0

Hydrofluoric Acid Resistance Corrosion Resistance In Reducing Environments Monel K500 Wire


  • Monel Series

The Monel K500 has excellent high-temperature strength and low-temperature toughness, and can withstand significant pressure and impact in both high and low temperature environments. In addition, the conductivity and thermal conductivity of the alloy are also good, which can meet the needs of engineering applications.
The processing difficulty of Monel K500 is relatively high, requiring the use of special processing equipment and tools. During the processing, this alloy is prone to cracking and deformation, which requires strict control and adjustment. In addition, due to the poor thermal conductivity of the alloy, temperature control is necessary during processing.

 


  • Chemical Properties of Monel K500

Ni Cu Al Ti C Mn Fe S Si

63

Max 

27-33 2.3-3.15 0.35-0.85 0.25 max 1.5 max 2.0 max 0.01 max 0.50 max

  • Production Process

1. Raw Material Selection: The production of Monel K500 wire begins with the selection of high-quality raw materials, typically alloys containing nickel, copper, aluminum, and titanium.

2. Alloy Melting: The chosen raw materials undergo high-temperature melting to form the Monel K500 alloy. Precise alloy composition is crucial to ensure the final product's performance.

3. Billet Preparation: After alloy melting, billets are prepared through casting or other methods, setting the stage for the subsequent heat treatment and deformation processes.

4. Billet Heat Treatment: Billets undergo precise heat treatment to adjust their crystalline structure, enhancing the material's mechanical properties and corrosion resistance.

5. Drawing Process: Following billet heat treatment, the material is drawn into fine wires of the desired diameter, a crucial step to ensure the end product's strength and dimensional accuracy.

6. Surface Treatment: The fine wires undergo surface treatments, including polishing and acid washing, to ensure surface smoothness and corrosion resistance.

7. Testing: Rigorous quality testing of the finished product includes chemical composition analysis, mechanical property testing, etc., ensuring the product meets specification standards.

8. Packaging: Qualified Monel K500 wires are packaged according to customer requirements to prevent damage during transportation and storage.

Hydrofluoric Acid Resistance Corrosion Resistance In Reducing Environments Monel K500 Wire 1


  • ,Mechanical Properties

    Typical Room Temperature Tensile Properties of Annealed Material

    Product Form Condition Tensile (ksi) .2% Yield (ksi) Elongation % Hardness
    Rod & Bar Hot-Finished/Aged 140-190 100-150 30-20 27-38 HRC
    Rod & Bar Hot Finished/Annealed 90-110 40-60 45-25 75-90 HRB
    Rod & Bar Hot Finished/Annealed/Aged 130-165 85-120 35-20 24-35 HRC
    Rod & Bar Cold-Drawn/Aged 135-185 95-160 30-15 25-41 HRC
    Rod & Bar Cold-Drawn/Annealed/Aged 130-190 85-120 30-20 24-35 HRC
    Plate ot-Finished/Aged 140-180 100-135 30-20 27-37 HRC
    Sheet Cold-Rolled/Annealed 90-105 40-65 45-25 85 HRB Max